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Hydration Structures of the Human Protein Kinase CK2 alpha Clarified by Joint Neutron and X-ray Crystallography

机译:通过关节中子和X射线晶体阐明的人蛋白激酶CK2α的水合结构

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摘要

Casein kinase 2 (CK2) has broad phosphorylation activity against various regulatory proteins, which are important survival factors in eukaryotic cells. To clarify the hydration structure and catalytic mechanism of CK2, we determined the crystal structure of the alpha subunit of human CK2 containing hydrogen and deuterium atoms using joint neutron (1.9 angstrom resolution) and X-ray (1.1 angstrom resolution) crystallography. The analysis revealed the structure of conserved water molecules at the active site and a long potential hydrogen bonding network originating from the catalytic Asp156 that is well known to enhance the nucleophilicity of the substrate OH group to the Upsilon-phospho group of ATP by proton elimination. His148 and Asp214 conserved in the protein kinase family are located in the middle of the network. The water molecule forming a hydrogen bond with Asp214 appears to be deformed. In addition, mutational analysis of His148 in CK2 showed significant reductions by 40%-75% in the catalytic efficiency with similar affinity for ATP. Likewise, remarkable reductions to less than 5% were shown by corresponding mutations on His131 in death-associated protein kinase 1, which belongs to a group different from that of CK2. These findings shed new light on the catalytic mechanism of protein kinases in which the hydrogen bond network through the C-terminal domain may assist the general base catalyst to extract a proton with a link to the bulk solvent via intermediates of a pair of residues. (C) 2018 Elsevier Ltd. All rights reserved.
机译:酪蛋白激酶2(CK2)对各种调节蛋白具有广泛的磷酸化活性,这是真核细胞中的重要存活因子。为了阐明CK2的水合结构和催化机制,我们使用关节中子(1.9埃分辨率)和X射线(1.1埃谱分辨率)晶体学确定含有氢和氘原子的人CK2的α亚基的晶体结构。该分析揭示了活性位点处的保守水分子的结构和源自催化ASP156的长电氢键网络,众所周知,通过质子消除增强基材OH基团的亲核磷酸磷酰基磷咯基团。 HIS148和ASP214在蛋白激酶家族中保存在网络的中间。形成与ASP214的氢键的水分子似乎变形。此外,CK2中HIS148的突变分析显示出催化效率的40%-75%的显着降低,具有与ATP相似的亲和力。同样地,在死亡相关蛋白激酶1上的相应突变中显示出少于5%的显着还原,其属于与CK2不同的组不同的组。这些发现在蛋白激酶的催化机制上揭示了催化机制,其中通过C末端结构域的氢键网络可以通过一对残基的中间体来帮助一般碱催化剂用与块状溶剂的链接提取质子。 (c)2018年elestvier有限公司保留所有权利。

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